Journal
JOURNAL OF MOLECULAR GRAPHICS & MODELLING
Volume 81, Issue -, Pages 50-59Publisher
ELSEVIER SCIENCE INC
DOI: 10.1016/j.jmgm.2018.02.010
Keywords
AIM; Cooperativity; DFT; DMSO; Solvents
Categories
Funding
- DST [SB/S1/PC-047/2013]
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This study aims to cast light on the nature of interactions and cooperativity that exists in linear dimethyl sulfoxide (DMSO) clusters using dispersion corrected density functional theory. In the linear DMSO, DMSO molecules in the middle of the clusters are bound strongly than at the terminal. The plot of the total binding energy of the clusters vs the cluster size and mean polarizabilities vs cluster size shows an excellent linearity demonstrating the presence of cooperativity effect. The computed incremental binding energy of the clusters remains nearly constant, implying that DMSO addition at the terminal site can happen to form an infinite chain. In the linear clusters, two a-hole at the terminal DMSO molecules were found and the value on it was found to increase with the increase in cluster size. The quantum theory of atoms in molecules topography shows the existence of hydrogen and S=O center dot center dot center dot S type in linear tetramer and larger clusters. In the dimer and trimer S=O center dot center dot center dot O=S type of interaction exists. In 2D non covalent interactions plot, additional peaks in the regions which contribute to the stabilization of the clusters were observed and it splits in the trimer and intensifies in the larger clusters. In the trimer and larger clusters in addition to the blue patches due to hydrogen bonds, additional, light blue patches were seen between the hydrogen atom of the methyl groups and the sulphur atom of the nearby DMSO molecule. Thus, in addition to the strong H-bonds, strong electrostatic interactions between the sulphur atom and methyl hydrogens exists in the linear clusters. (C) 2018 Elsevier Inc. All rights reserved.
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